Residential crowding and asthma in preschool children, a cross-sectional study

Main Article Content

S. Kutzora
L. Puerto Valencia
A. Weber
J. Huß
L. Hendrowarsito
U. Nennstiel-Ratzel
C. Herr
S. Heinze

Keywords

Asthma, Asthma symptoms, Cross-sectional study, Crowding, preschool, children, Germany, Health monitoring units, Physician diagnosed asthma, Residential crowding, ISAAC, Migration status

Abstract

Background: Asthma is the most common chronic disease in children, and associations with crowding have been reported. The aim of this study was to explore possible associations of crowding with asthma in children.


Methods: Seven cross-sectional surveys with preschool children were conducted within the framework of the health monitoring units in Bavaria, Germany, from 2004 to 2014. Residential crowding was defined as habitation of more than one person per room or less than 20 m2 living space per person. Logistic regression models examined temporal changes in crowding, applying the first survey as reference. The relationship between crowding and physician-diagnosed asthma, asthma defined by the International Study of Asthma and Allergies in Childhood (ISAAC) and asthma symptoms were analyzed.


Results: Analyzing temporal changes of crowding rates did not reveal any differences over the years. However, the stratified descriptive analysis indicated a crowding increase in time in urban households where parents had a low education level (47.9% in 2004/05, 55.8% in 2014/15). No association was found between crowding and the variables ‘‘physician-diagnosed asthma’’ in 2014/15, ‘‘asthma defined by ISAAC’’ in 2014/15, or ‘‘wheezing’’ in 2014/15. A positive association with cough was identified in 2014/15 after adjusting for confounders (aOR = 1.42 [95% CI: 1.20-1.69]).


Conclusions: In general, residential crowding did not change from 2004 to 2014; however, there seems to be a small upsurge for children with low-educated parents, living in urban areas over the years. A statistically significant association between crowding and cough was only found in the survey from 2014/15.

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References

1. MeSH Term Crowding [Internet]. 1968. Available from: http://www.ncbi.nlm.nih.gov/mesh/68003441.

2. Kabisch S, Steinführer A, Haase A, Großmann K, Peter A, Maas A. Demographic change and its impact on housing. Leipzig: Helmholtz Centre for environmental research - UFZ; 2008.

3. Grey A. Definitions of crowding and the effects of crowding on health: a literature review. Wellington, New Zealand: Ministry of Social Policy; 2001.

4. Burr JA, Mutchler JE, Gerst K. Patterns of residential crowding among hispanics in later life: immigration assimilation, and housing market factors. J Gerontol Ser B: Psychol Sci Soc Sci. 2010;65B:772-82.

5. Goodyear RKFA, Hay J. Finding the crowding index that works best for New Zealand. Wellington: Statistics New Zealand; 2011.

6. Colosia AD, Masaquel A, Hall CB, Barrett AM, Mahadevia PJ, Yogev R. Residential crowding and severe respiratory syncytial virus disease among infants and young children: a systematic literature review. BMC Infect Dis. 2012;12:1-13.

7. Legislation UK. Housing Act 1985 UK: The Stationery Office; 1986. Available from: http://www.legislation.gov.uk/ukpga/1985/68/part/X

8. Burr JA, Mutchler JE. Housing characteristics of older Asian Americans. J Cross-Cult Gerontol. 2012;27:217-37.

9. Solari CD, Mare RD. Housing crowding effects on children’s wellbeing. Soc Sci Res. 2012;41:464-76.

10. Haan M. Does immigrant residential crowding reflect hidden homelessness? Can Stud Popul. 2011;38(1-2):43-59.

12. Illi S, von Mutius E, Lau S, Niggemann B, Grüber C, Wahn U. Perennial allergen sensitisation early in life and chronic asthma in children: a birth cohort study. The Lancet. 368(9537):763-70.

13. Illi S, Depner M, Genuneit J, Horak E, Loss G, Strunz-Lehner C, et al. Protection from childhood asthma and allergy in Alpine farm environments - the GABRIEL Advanced Studies. Journal of Allergy and Clinical Immunology.129(6):1470-7.e6.

14. The Global Asthma Report 2014. Auckland, New Zealand: Global. Asthma Network; 2014.

15. Schlaud MAK, Thierfelder W, Allergische Erkrankungen. Ergebnisse aus dem Kinder- und Jugendgesundheitssurvey (KiGGS). Bundesgesundheitsbl Gesundheitsforsch Gesundheitsschutz 5/6. 2007;2007:701-10.

16. Weiland SK, von Mutius E, Hirsch T, Duhme H, Fritzsch C, Werner B, et al. Prevalence of respiratory and atopic disorders among children in the East and West of Germany five years after unification. Eur Respir J. 1999;14:862-70.

17. Baker MG, McDonald A, Zhang J, Howden-Chapman P. Infectious diseases attributable to household crowding in New Zealand: a systematic review and burden of disease estimate. Wellington He Kainga Oranga/Housing and Health Research Programme, University of Otago; 2013. Available from: http://www.healthyhousing.org.nz/publications [updated 2013. 1-72].

18. Gern JE. The urban environment and childhood asthma study. J Allergy Clin Immunol. 2010;125:545-9.

19. Cardoso MRA, Cousens SN, de Góes Siqueira LF, Alves FM, D’Angelo LAV. Crowding: risk factor or protective factor for lower respiratory disease in young children? BMC Public Health. 2004;4:19-20.

20. Bolte G, Heißenhuber A, von Kries R, Liebl B, Zapf A, Wildner M, et al. Health monitoring units in Bavaria Concept, aims and thematic focus of the first survey on children’s environment and health. Bundesgesundheitsblatt - Gesundheitsforschung - Gesundheitsschutz. 2007;50:476-83.

21. Weber A, Herr C, Hendrowarsito L, Meyer N, Nennstiel-Ratzel U. No further increase in the parent-reported prevalence of allergies in Bavarian preschool children: results from three cross-sectional studies. Int J Hyg Environ Health. 2016;219(4-5):343-8.

22. PennState Eberly College of Science. Detecting multicollinearity using variance inflation factors the Pennsylvania state university. The Pennsylvania State University; 2016. Available from: https://onlinecourses.science.psu.edu/stat501/node/347

23. Eurostat. Average number of rooms per person by tenure status and dwelling type from 2003 onwards [Internet]. European Commision. Available from: http://ec.europa.eu/eurostat/web/income-and-living-conditions/data/database [cited July 2016].

24. Cambridge Dictionary. Cambridge Dictionary. Social Housing United Kingdom 2018 [Available from: https://dictionary.cambridge.org/dictionary/english/social-housing].

25. Clark WAV, Deurloo MC, Dieleman FM. Housing consumption and residential crowding in U.S. housing markets. J Urban Affairs. 2000;22:49-63.

26. Kears RA, Smith CJ, Abbott MW. The stress of incipient homelessness. Hous Stud. 1992;7:280-98.

27. BinSaeed AA, Torchyan AA, Alsadhan AA, Almidani GM, Alsubaie AA, Aldakhail AA, et al. Determinants of asthma control among children in Saudi Arabia. J Asthma. 2014;51:435-9.

28. Beggs P. Spatial analysis of dwelling crowding and disease in Sydney, Australia. In: The 11th Annual Colloquium of the Spatial Information Research Centre. 1999.

29. European Respiratory Society. Global strategy for asthma management and prevention. GINA Global Initiative for Asthma; 2015.

30. Sandel M, Wright RJ. When home is where the stress is: expanding the dimensions of housing that influence asthma morbidity. Arch Dis Child. 2006;91:942-8.

32. Figueras-Aloy J, Carbonell-Estrany X, Quero J, Group IS. Case-control study of the risk factors linked to respiratory syncytial virus infection requiring hospitalization in premature infants born at a gestational age of 33-35 weeks in Spain. Pediatr Infect Dis J. 2004;23:815-20.

33. Stein L. A study of respiratory tuberculosis in relation to housing conditions in Edinburgh: I. The pre-war period. Br J Soc Med. 1950;4:143-69.

34. Wanyeki I, Olson S, Brassard P, Menzies D, Ross N, Behr M, et al. Dwellings, crowding, and tuberculosis in Montreal. Soc Sci Med. 2006;63:501-11.

35. Vadheim CM, Greenberg DP, Bordenave N, Ziontz L, Christenson P, Waterman SH, et al. Risk factors for invasive Haemophilus influenzae type b in Los Angeles county children 18-60 months of age. Am J Epidemiol. 1992;136:221-35.

36. Baker M, Mcnicholas A, Garrett N, Jones N, Stewart J, Koberstein V, et al. Household crowding a major risk factor for epidemic meningococcal disease in Auckland children. Pediatr Infect Dis J. 2000;19:983-90.

37. Webb PM, Knight T, Greaves S, Wilson A, Newell DG, Elder J, et al. Relation between infection with Helicobacter pylori and living conditions in childhood: evidence for person to person transmission in early life. Br Med J. 1994;308: 750-3.

38. Whitaker CJ, Dubiel AJ, Galpin OP. Social and geographical risk factors in Helicobacter pylori infection. Epidemiol Infect. 1993;111:63-70.

39. McCallion WA, Murray LJ, Bailie AG, Dalzell AM, O’Reilly DP, Bamford KB. Helicobacter pylori infection in children: relation with current household living conditions. Gut. 1996;39: 18-21.